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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >3-D topology optimization based on nodal density of divided sub-elements for enhanced surface representation
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3-D topology optimization based on nodal density of divided sub-elements for enhanced surface representation

机译:基于划分子元素的节点密度的3-D拓扑优化,以增强表面表示

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摘要

The material distribution based on an element density is adequate for most of 2-D topology optimization problems. However, in 3-D topology optimization it is usually difficult to obtain a smooth topological configuration and a virtual connectivity phenomenon easily appears in a low-density domain. A 3-D structural topology optimization and novel surface-smoothing scheme based on SIMP (solid isotropic microstructure with penalization) and sub-element bilinear interpolation has been developed using node densities and a corresponding computer program was written in order to validate the proposed method. Compared to a common element density method, the proposed method resulted in more enhanced smooth surfaces of optimum topology designs. To show the usefulness of the method, three examples of 3-D structural topology optimizations were illustrated.
机译:基于元素密度的材料分布足以解决大多数二维拓扑优化问题。但是,在3-D拓扑优化中,通常很难获得平滑的拓扑配置,并且虚拟连接现象很容易出现在低密度域中。利用节点密度,开发了一种基于SIMP(带有罚分的固体各向同性微观结构)和子元素双线性插值的3-D结构拓扑优化和新颖的表面平滑方案,并编写了相应的计算机程序来验证该方法。与普通的元素密度方法相比,该方法可提高最佳拓扑设计的平滑表面。为了显示该方法的有效性,说明了3D结构拓扑优化的三个示例。

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